Guaranteed cost control for exponential synchronization of cellular neural networks with mixed time-varying delays via hybrid feedback control
The problem of guaranteed cost control for exponential synchronization of cellular neural networks with interval nondifferentiable and distributed time-varying delays via hybrid feedback control is considered. The interval time-varying delay function is not necessary to be differentiable. Based on t...
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th-cmuir.6653943832-479952018-04-25T08:46:29Z Guaranteed cost control for exponential synchronization of cellular neural networks with mixed time-varying delays via hybrid feedback control T. Botmart W. Weera The problem of guaranteed cost control for exponential synchronization of cellular neural networks with interval nondifferentiable and distributed time-varying delays via hybrid feedback control is considered. The interval time-varying delay function is not necessary to be differentiable. Based on the construction of improved Lyapunov-Krasovskii functionals is combined with Leibniz-Newton's formula and the technique of dealing with some integral terms. New delay-dependent sufficient conditions for the exponential synchronization of the error systems with memoryless hybrid feedback control are first established in terms of LMIs without introducing any free-weighting matrices. The optimal guaranteed cost control with linear error hybrid feedback is turned into the solvable problem of a set of LMIs. A numerical example is also given to illustrate the effectiveness of the proposed method. © 2013 T. Botmart and W. Weera. 2018-04-25T08:46:29Z 2018-04-25T08:46:29Z 2013-04-29 Journal 16870409 10853375 2-s2.0-84876545266 10.1155/2013/175796 https://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=84876545266&origin=inward http://cmuir.cmu.ac.th/jspui/handle/6653943832/47995 |
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The problem of guaranteed cost control for exponential synchronization of cellular neural networks with interval nondifferentiable and distributed time-varying delays via hybrid feedback control is considered. The interval time-varying delay function is not necessary to be differentiable. Based on the construction of improved Lyapunov-Krasovskii functionals is combined with Leibniz-Newton's formula and the technique of dealing with some integral terms. New delay-dependent sufficient conditions for the exponential synchronization of the error systems with memoryless hybrid feedback control are first established in terms of LMIs without introducing any free-weighting matrices. The optimal guaranteed cost control with linear error hybrid feedback is turned into the solvable problem of a set of LMIs. A numerical example is also given to illustrate the effectiveness of the proposed method. © 2013 T. Botmart and W. Weera. |
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T. Botmart W. Weera |
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T. Botmart W. Weera Guaranteed cost control for exponential synchronization of cellular neural networks with mixed time-varying delays via hybrid feedback control |
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T. Botmart W. Weera |
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T. Botmart |
title |
Guaranteed cost control for exponential synchronization of cellular neural networks with mixed time-varying delays via hybrid feedback control |
title_short |
Guaranteed cost control for exponential synchronization of cellular neural networks with mixed time-varying delays via hybrid feedback control |
title_full |
Guaranteed cost control for exponential synchronization of cellular neural networks with mixed time-varying delays via hybrid feedback control |
title_fullStr |
Guaranteed cost control for exponential synchronization of cellular neural networks with mixed time-varying delays via hybrid feedback control |
title_full_unstemmed |
Guaranteed cost control for exponential synchronization of cellular neural networks with mixed time-varying delays via hybrid feedback control |
title_sort |
guaranteed cost control for exponential synchronization of cellular neural networks with mixed time-varying delays via hybrid feedback control |
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2018 |
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https://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=84876545266&origin=inward http://cmuir.cmu.ac.th/jspui/handle/6653943832/47995 |
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